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Influence of thermal effects on buoyancy-driven convection around autocatalytic chemical fronts propagating horizontally

机译:热效应对水平传播的自催化化学前沿周围浮力驱动对流的影响

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摘要

The spatiotemporal dynamics of vertical autocatalytic fronts traveling horizontally in thin solution layers closed to the air can be influenced by buoyancy-driven convection induced by density gradients across the front. We perform here a combined experimental and theoretical study of the competition between solutal and thermal effects on such convection. Experimentally, we focus on the antagonistic chlorite-tetrathionate reaction for which solutal and thermal contributions to the density jump across the front have opposite signs. We show that in isothermal conditions the heavier products sink below the lighter reactants, providing an asymptotic constant finger shape deformation of the front by convection. When thermal effects are present, the hotter products, on the contrary, climb above the reactants for strongly exothermic conditions. These various observations as well as the influence of the relative weight of the solutal and thermal effects and of the thickness of the solution layer on the dynamics are discussed in terms of a two-dimensional reaction-diffusion-convection model parametrized by a solutal R-C and a thermal R-T Rayleigh number.
机译:在靠近空气的薄溶液层中水平传播的垂直自催化锋面的时空动力学会受到由锋面两端的密度梯度引起的浮力驱动对流的影响。我们在这里对这种对流的溶质和热效应之间的竞争进行了实验和理论相结合的研究。在实验上,我们着重于拮抗亚氯酸盐-四硫代酸盐反应,该反应对溶液密度和溶解度的影响是相反的。我们表明,在等温条件下,较重的产物下沉于较轻的反应物下方,通过对流提供前部渐近恒定的手指形状变形。相反,当存在热效应时,较热的产物会在强烈放热条件下攀升至反应物上方。根据由二维RC和RC参数化的二维反应扩散对流模型,讨论了这些不同的观察结果以及溶质和热效应的相对权重以及溶液层厚度对动力学的影响。热RT瑞利数。

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